Special roof material

By using a special support material with adjustable height and variable columns on the roof of a building, the problems of long construction time and poor durability of traditional metal panel roofs have been solved, enabling rapid construction and height adjustment, and enhancing the supporting strength.

CN121952283APending Publication Date: 2026-05-01韩周渊
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
韩周渊
Filing Date
2024-11-18
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Traditional metal panel roofs require lengthy construction time when adjusting the height, and the bolt and nut connections are prone to loosening, leading to changes in height and affecting durability.

Method used

It adopts a special support material with adjustable column height. The height can be adjusted between the upper and lower panels by means of the adjustable column. The upper panel is supported by rotating fasteners and fixed protrusions, which can realize rapid construction and height adjustment.

Benefits of technology

It shortens the construction period, improves the support for the upper panel, enhances durability, and simplifies the construction process by allowing for easy installation without the need for separate fasteners.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a special roof material for building roofs. According to an embodiment of the present invention, a special roof material whose height is easily adjusted by a variable column is a special roof material, the height of which can be adjusted by a variable column that can be moved from upper and lower panels to the height of the upper and lower panels, the height of the upper and lower panels can be adjusted by the variable column, and the height of the upper and lower panels can be adjusted by the variable column. The variable column can pass through a base column member supported by an upper and lower panel, and the upper and lower panel can move to the height of the upper and lower panel, so that the upper and lower panels and the base member moving upwards by sliding of the upper and lower panels are supported by up and down movement of the upper and lower panels on the upper and lower panels. Comprising a rotary fixing part for fixing or releasing the fixed moving position according to needs. Therefore, the thickness of the special roof material can be conveniently adjusted for construction.
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Description

Special roofing materials Technical Field

[0001] This invention relates to special roofing materials used to construct building roofs. Background Technology

[0002] Generally, buildings and other structures are fitted with roofs to cover the open upper parts.

[0003] Because the roof is located at the very top of the structure, special roofing materials with additional functions are installed to withstand direct sunlight and rain and snow, as well as wind loads and rain and snow loads.

[0004] Special roofing materials are usually designed for thermal insulation, consisting of an insulation material placed between the upper and lower panels. If only the upper panel is placed on top of the insulation material, the insulation material will be compressed, and the deformation of the insulation material will cause the upper panel to easily separate, resulting in a decrease in durability.

[0005] To address this issue, the Korean Patent Registration No. 10-2230212 (published on March 19, 2021) was previously initiated, concerning a "metal panel roof with sliding and height adjustment means".

[0006] The aforementioned traditional metal panel roof consists of corrugated panels horizontally installed on the building wall, with the center fixed to the top of the channel; guide rails are vertically fixed and spaced out on the top of the corrugated panels; each of the aforementioned guide rails is fixedly placed at front and rear intervals, and the movable slide rails and connectors can vary in height according to the design conditions of the aforementioned building; corner strips are horizontally fixedly installed on the top of each connector; and a terminal plate for the horizontal joint at the top of the corner strips is included.

[0007] This type of traditional metal panel roof connects the corrugated panels and the base plate with connectors, which can firmly support the insulation material even if it deforms, thereby improving durability and preventing the insulation material from being compacted.

[0008] On the other hand, when installing traditional metal panel roofs, the connectors can be adjusted in height. However, since the bolts and nuts are used to fix the connectors when adjusting the height, the adjustment takes a long time and is difficult to implement.

[0009] In addition, traditional metal panel roofs have the problem that when the bolts and nuts are loosened, the height changes when the height is adjusted and fixed on the connectors. Summary of the Invention

[0010] The problem that the invention aims to solve

[0011] The present invention is proposed to solve the above-mentioned problems. The problem to be solved by the present invention is to provide a special roofing material with adjustable height by setting an adjustable-length variable column between the upper panel and the lower panel, and by using the variable column to facilitate construction by adjusting the height of the upper panel.

[0012] Furthermore, the purpose of this invention is to provide a special support material for easily adjustable height variable columns that can be constructed quickly by rotating the variable column and fixing or releasing the movable column component from the base column component through the fixing part.

[0013] Furthermore, the purpose of this invention is to provide a special roofing material whose height can be adjusted by variable columns, because the rotating fixing part is supported by multiple fixed protrusions on the column fixing groove, thereby increasing the supporting force of the load applied to the upper part and thus improving durability.

[0014] Furthermore, the purpose of this invention is to provide a special support material that is easy to adjust in height for variable columns that can be quickly constructed to a uniform height by forming fixed protrusions at equal intervals, thereby making it easy to control the number of protrusions from the variable column to the fixed protrusions.

[0015] Furthermore, the purpose of this invention is to form a plunger disassembly part at the lower part of the variable plunger, which is rotatably fixed to the plunger fixing bracket, thereby providing a special bracket material. The variable plunger can be easily installed on the lower panel, thereby allowing for height adjustment.

[0016] In addition, the purpose of this invention is to form a support joint at the upper part of the variable column, which allows for the easy installation of a panel bracket that supports the upper panel, thereby providing a special roofing material that is easy to construct and whose height can be adjusted by the variable column.

[0017] Methods for solving problems

[0018] To accomplish the above tasks, according to an embodiment of the present invention, a special support material adjustable by a variable column height is used. This material allows for the adjustment of the upper panel on the lower panel via the variable column height. It includes a liftable variable column that supports the upper panel on the lower panel. The variable column is a base column that lifts and lowers the lower panel, allowing the panel's height to be moved vertically or horizontally, and then sliding downwards on the base. A rotating fixing member is included to fix or release the fixed position of the movable support component by rotating it.

[0019] The rotating fixing part may be included on either the base column or the movable column. The movable column forms a plurality of rear fixing grooves at preset equal intervals in the sliding movement direction. When the movable column is rotated in the base column, the movable column fixes the adjusted height on the rear fixing groove part corresponding to the rear fixing groove in the adjusted position, or disengages from the rear fixing groove and releases the fixing protrusion.

[0020] The fixing protrusion consists of a number of protrusions corresponding to the positions of the fixing grooves. When the fixing protrusions span the fixing grooves, there are at least two fixing protrusions spanning the fixing grooves, which can improve the supporting force.

[0021] The rear fixing groove may include upper and lower connecting grooves, allowing the plurality of rear fixing grooves to be connected to the sliding direction of the movable rear component, thereby moving up and down away from the rear fixing groove.

[0022] The variable columns are connected in multiple ways, including a panel bracket that supports the upper panel. Each variable column may include a bracket joint that is combined with the panel bracket.

[0023] The lower panel may include a support bracket for fixing the variable support.

[0024] The rear fixing frame includes a rear detachment groove formed along the length direction of the rear fixing frame. The variable rear column is located at the lower part of the variable rear column. The variable rear column can be rotated on the rear fixing frame to rest on the rear detachment groove, or the suspension can be released on the rear detachment groove, so that the variable rear column can be combined with the detachable groove on the rear fixing frame.

[0025] It may include thermal insulation material inserted between the upper panel and the lower panel.

[0026] Invention Effects

[0027] According to the present invention, a variable column with an adjustable spacing is provided between the upper panel and the lower panel. This not only allows for convenient adjustment of the height of the upper panel, but also allows for the formation of a rotating fixing part on the variable column to rotate and fix or release the foundation column component, thereby quickly adjusting the height and shortening the construction period.

[0028] Furthermore, the present invention can also configure the rotating fixing part as multiple fixing protrusions supported on each corresponding rear fixing groove, thereby increasing the supporting force on the load applied to the upper panel and thus improving durability.

[0029] Furthermore, the present invention can conveniently determine the number of exposed fixed protrusions in the movable pile component, thereby quickly constructing an adjustable height to achieve a uniform height.

[0030] In addition, the present invention has a plunger disassembly part at the lower part of the variable plunger, which can be disassembled by rotating the variable plunger on the lower panel. Therefore, it can be easily installed even without separate fasteners, thus shortening the construction time.

[0031] Furthermore, the present invention also includes a bracket joint for inserting a panel bracket into the upper part of the variable column, which allows for quick and convenient installation of the upper panel. Attached Figure Description

[0032] Figure 1 is a perspective view of a special roofing material whose cut height can be easily adjusted by means of a variable plunger, according to an embodiment of the present invention.

[0033] Figure 2 is a single-side cross-sectional view of a special roofing material that is easy to adjust in height by means of a variable plunger, according to an embodiment of the present invention.

[0034] Figure 3 is an embodiment of the present invention, illustrating four views of a variable column made of a special roofing material whose height is easily adjustable.

[0035] Figure 4 is a perspective view of a variable column made of a special roofing material that is easy to adjust in height, according to an embodiment of the present invention, showing the state of the variable column combined with the column fixing frame.

[0036] Figure 5 is an embodiment of the present invention, showing a single-sided cross-sectional view of a special roofing material composed of variable plungers that is easy to adjust in height, representing the state of height adjustment by rotating the fixing member.

[0037] Explanation of reference numerals in the attached figures

[0038] 100: Special roofing materials

[0039] 110: Bottom panel

[0040] 111; Plate bone

[0041] 115: Rear mounting bracket

[0042] 115a: Rear disassembly slot

[0043] 120: Top Panel

[0044] 125: Panel bracket

[0045] 140: Thermal insulation materials

[0046] 150: Variable column

[0047] 151: No foundation column

[0048] 152: Rear disassembly section

[0049] 152a: Installation Planning Department

[0050] 152b: De-adhesive stumbling block

[0051] 153: Rotating fixed part

[0052] 153a: Fixed protrusion

[0053] 153b: Rear fixing groove

[0054] 153c: Upper and lower connecting slots

[0055] 154: No movable support pillars

[0056] 155: Bracket Joint

[0057] 155a: Bracket insertion slot

[0058] 155b: Contract signing Detailed Implementation

[0059] The embodiments of the present invention will now be described with reference to the accompanying drawings.

[0060] As shown in Figures 1 and 2, according to an embodiment of the present invention, a special roofing material (100) that is easy to adjust in height by a variable plunger can cover the ceiling of the structure, sealing the open upper part of the structure.

[0061] Here, the structure can be in the form of a ship's hull, a temporary building, or a structure.

[0062] The special roofing material (100) may consist of an insulation material (140) located between the lower column fixing frame (115)(110) and the upper panel (120), and the lower panel (110) may form concave plate ribs (111) along the width or length direction of the lower panel (110) at regular intervals.

[0063] On the panel ribs (111) of the lower panel (110), a column bracket (115) for mounting the variable column (150) to be described can be installed. The column bracket (115) can be installed on the panel ribs (111) corresponding to the preset spacing of the lower panel (110).

[0064] The rear fixation bracket (115) is formed in a shape corresponding to the panel bone (111). When the rear fixation bracket (115) is installed on the panel bone (111), the rear fixation bracket (115) may not protrude on the lower plate (110) and form a flat surface.

[0065] In order to install a variable rear bracket (150) on the rear bracket (115), a rear slot (115a) can be formed along the length direction of the rear bracket (115), and the interior of the rear bracket (115) can be formed into a hollow shape with a larger internal space than the rear slot (115a).

[0066] The lower panel (110) can connect the overlapping parts of multiple lower panels (110) in a bent form when their ends overlap, and cover the open upper part of the structure to seal it. The upper panel (120) can also connect the ends of multiple upper panels (120) in a bent form when they partially overlap, just like the lower panel (110).

[0067] The thermal insulation material (140) can be inserted between the lower panel (110) and the upper panel (120). The thermal insulation material (140) can be installed in overlapping layers with different functions, or multiple thermal insulation materials (140) with the same function can be installed.

[0068] An anti-condensation seat may be provided between the upper panel (120) and the insulation material (140) or between the lower panel (110) and the insulation material (140). The anti-condensation seat may be provided in various forms as announced.

[0069] The embodiment describes the installation of thermal insulation material (140) between the upper panel (120) and the lower panel (110), but in addition to thermal insulation material (140), it can also be installed together with various configurations of roof functionality or thermal insulation material (140).

[0070] As shown in Figures 3 to 5, according to an embodiment of the present invention, a special roofing material (100) that is easy to adjust in height via variable columns may include variable columns (150).

[0071] The variable plunger (150) can support the upper panel (120) on the lower panel (110) to the upper part.

[0072] The height of the variable plunger (150) can be adjusted, and the interval from the lower panel (110) to the upper part of the upper panel (120) can be adjusted.

[0073] The variable column (150) can be installed by adjusting the height of the insulation material (140) inserted between the upper panel (120) and the lower panel (110) according to the thickness of the insulation material (140) inserted between the upper panel (120) and the lower panel (110) according to the height of the roof.

[0074] As shown in Figures 3 and 4, the variable column (150) may include a base column member (151) and a movable column member (154).

[0075] The basic support component (151) can be installed on the lower panel (110), the movable support component (154) can support the upper panel (120), the movable support component (154) can slide up and down on the basic support component (151), and the height of the upper panel (120) can be adjusted on the lower panel (110).

[0076] The foundation column member (151) can be formed in the shape of a long rod, and the movable column member (154) can be formed in the form of a hollow structure with a closed top, so that the foundation column member (151) can be inserted into the movable column member (154) so ​​that the foundation column member (151) can slide up and down.

[0077] In the implementation example, the base column member (151) is shown inserted into the movable column member (154), but the base column member (151) is formed in a hollow form, and the movable column member (154) can be configured to be embedded in the hollow of the base column member (151) and slide up and down.

[0078] In the base column member (151) and the movable column member (154), a rotating fixing member (153) can be formed, and the height can be adjusted by sliding the movable column member (154) on the base column member (151) to release and fix.

[0079] The rotating fixing member (153) can fix or release the height adjustment of the movable support member (154) in the base support member (151) according to the direction of rotation of the movable support member (154) in the base support member (151) around the base support member (151).

[0080] The rotating fastener (153) refers to fixing the rear fixing groove (153b) and the fixing protrusion (153a) in the base column (151) and the movable column (154), one of which forms the fixing protrusion (153a) and the other forms the rear fixing groove (153b). Depending on the direction in which the base column (151) rotates the movable column (154), the fixing protrusion (153a) is fixed in the fixing groove (153b) and fixed at a height that is adjusted to be fixed or fixed (153b). The fixing can be released.

[0081] In the implementation example, it is shown that a fixing protrusion (153a) is formed on the base support member (151) and a rear fixing groove (153b) is formed on the movable support member (154). However, it is also possible to form a rear fixing groove (153b) on the base support member (151) and a fixing protrusion (153a) on the movable support member (154).

[0082] The fixed protrusion (153a) can extend to the opposite sides around the base support member (151) and form multiple openings at predetermined equal intervals along the vertical length direction of the base support member (151).

[0083] The number of rear fixing grooves (153b) corresponds to the position of the fixing protrusion (153a) and can be formed around the next part of the movable rear member (154).

[0084] The rear fixing groove (153b) can be formed in the form of a ring at a position corresponding to each fixing protrusion (153a), such that when each fixing protrusion (153a) crosses over each rear fixing groove (153b), the rear fixing member (154) can be rotated and moved around the base rear fixing member (151).

[0085] Furthermore, on the lower periphery of the movable pile member (154), the lower periphery of the plurality of pile fixing grooves (153b) formed along the length direction can be connected to the pile fixing grooves (153b) located in the vertical direction by the upper and lower connecting grooves (153c).

[0086] The upper and lower connecting grooves (153c) are formed with a width corresponding to the width of the fixed protrusion base (153a). If the fixed protrusion base (153a) is located in the upper and lower connecting grooves (153c), the fixed protrusion base (153a) can move up and down along the upper and lower connecting grooves (153c), and the foundation support member (151) moves the support member (154) up and down.

[0087] For example, if a fixing protrusion (153a) of a base column member (151) is inserted into the base column member (151) at a position corresponding to the upper and lower connecting grooves (153c) of the movable column member (154), the fixing protrusion (153a) will be inserted into the inner side of the movable column member (154) along the upper connecting groove (153c), and the base column member (151) will be moved from the base column member (151) to a height (151) corresponding to the base column member (154), and the base column member (154) will be moved from the position of the upper and lower connecting grooves (151) of the base column member (154) to the base column member (151). After the fixing protrusion (153a) is inserted into the rear fixing groove (153b) connected to c), the fixing protrusion (153a) will disengage from the upper and lower connecting grooves (153c), thereby fixing the position of the movable rear member (154).

[0088] Conversely, if the position of the movable column member (154) in the foundation column member (151) needs to be changed while the height is fixed, the movable column member (154) is rotated in the foundation column member (151), moving the fixed protruding beam (153a) to the side of the rear fixed groove (153b) and moving it to a position corresponding to the upper and lower connecting grooves (153c). The fixed protruding beam (153a) can be moved up and down (151) through the foundation column (153c), thereby moving it from the foundation column (154) to the foundation column (154). This can be changed.

[0089] At this time, with the base support (151) fixing the movable support (154) to its maximum height, at least two or more fixed protrusions (153a) span the support fixing groove (153b) respectively, which can improve the support force on the load of the upper panel (120).

[0090] In addition, the height of the variable support (150) can be conveniently displayed by using height markings (not shown) on multiple fixed protrusions (153a) or base supports (151), with scales or numbers indicating height or different colored height markings (not shown) on fixed protrusions (153a) at different heights.

[0091] The movable pile component (154) is formed in a horizontally bisected form and can be configured to be bonded or combined with each other for easy manufacturing. The movable pile component (154) or the foundation pile component (151) is formed of synthetic resin and can block the heat transfer between the upper panel (120) and the lower panel (110).

[0092] As shown in Figure 5, the variable column (150) may include a rear disassembly member (152) for fixing the variable column (150) to the base plate (110), the rear disassembly member (152) may be composed of the lower part of the base column member (151).

[0093] The rear disassembly part (152) can be removed from the rear disassembly groove (115a) of the rear fixing bracket (115) mounted on the panel bone (111) of the lower panel (110) to fix the variable column (150) on the lower panel (110) or to release the fixing.

[0094] The rear disassembly section (152) may include a fixed flange support (152a) mounted on the upper part of the rear fixed frame (115) and a lower part of the mounting flange support (152a), and a disassembly suspension section (152b) located inside the rear disassembly groove (115a).

[0095] The stabilizing flange support (152a) can be formed in the form of a flange with a larger circumference than the rear disassembly groove (115a) to prevent the variable support (150) from being inserted into the interior of the rear mounting bracket (115) through the rear disassembly groove (115a) and thus stabilized on the upper part of the rear mounting bracket (115).

[0096] The detachable suspension part (152b) can be moved from the lower part of the fixed flange support (152a) through the rear detachable groove (115a) to be located inside the rear fixed frame (115). The detachable suspension part (152b) has a longer length in the longitudinal direction of the rear detachable groove (115a). The length of the detachable suspension part (152b) may be larger than the rear detachable groove (115a) but does not exceed the internal width of the fixed frame (115).

[0097] The debonding suspension part (152b) is placed side by side with the rear debonding groove (115a) and inserted into the interior of the rear debonding groove (115a). When the variable plunger (150) is rotated, the debonding suspension part (152b) also rotates. The length direction of the debonding suspension part (152b) can be located in the width direction of the rear debonding groove (115a). The debonding part (152b) is fixed as a fixed plunger (150) on the inner side of the rear debonding groove (115a).

[0098] For example, when the variable plunger (150) is combined with the plunger holder (115), with the plunger removal slot (115a) placed side by side in the longitudinal direction, the removal suspension part (152b) is inserted into the plunger removal slot (115a), the variable plunger (150) is rotated 90°, and the removal suspension part (152b), placed side by side in the longitudinal direction of the plunger removal slot (115a), connects the removal slot (115a) to the plunger (115a) as a width-direction fixing slot (152b). The variable plunger (150) can be attached to the rear holder (115).

[0099] Conversely, when releasing the variable column (150) fixed to the rear mounting bracket (115), if the variable column (150) is rotated at an angle of 90° in the opposite direction to the direction in which it is fixed to the rear mounting bracket (115), then the disassembly suspension part (152b) placed in the width direction of the rear disassembly groove (115a) is aligned with the length direction of the rear disassembly groove (115a), and the disassembly seat (152b) can be fixed to the variable column (150) through the rear disassembly groove (115a).

[0100] As shown in Figures 3 and 4, the variable column (150) may include a support joint (155) to connect to the panel bracket (125) that supports the upper panel (120).

[0101] The bracket joint (155) can form the top of the movable column component (154) of the variable column (150).

[0102] The panel bracket (125) may intersect with the plunger holder (115) on the lower panel (110) where the variable plunger (150) is fixed, or may be located at the lower part of the upper panel (120). The panel bracket (125) may be positioned at an "A" or "T" angle.

[0103] Multiple variable columns (150) are connected to the panel bracket (125), and an upper panel (120) can be connected to the upper part of the panel bracket (125). When the upper panel (120) is connected, welded or stacked on the panel bracket (125) by fasteners such as bolts, nuts or rivets, it is fixed together by panel fasteners.

[0104] The bracket joint (155) can form an upper open bracket insertion slot (155a) for inserting the panel bracket (125). The bracket joint (155) can form a panel bracket (125) inserted into the bracket insertion slot (155a). Fastening holes (155) inserted into the bracket joint (155b) by fasteners such as bolts, nuts or rivets can pass through the bracket joint (155a).

[0105] Here, if the panel support (125) is an "A" or "T" shaped angle, it may be a vertically formed part.

[0106] Explain the roles and effects of the above components.

[0107] According to an embodiment of the present invention, a special roofing material (100) that is easy to adjust in height by means of variable columns will be used to install column fixing brackets (115) on the panel ribs (111) of the lower panel (110) of the open upper part of the capping structure, and the rear fixing brackets (115) will be installed on the lower panel (110) at a predetermined interval.

[0108] The rear mounting bracket (115) forms a rear disassembly groove (115a) along the length direction of the rear mounting bracket (115). The width of the rear disassembly groove (115a) is smaller than the internal space of the rear mounting bracket (115). The rear mounting bracket (115) is fixed to the lower plate (110) by welding or by fasteners such as rivets, bolts and nuts.

[0109] Thermal insulation material (140) can be installed on the upper part of the lower panel (110). The thermal insulation material (140) can be installed on the front of the lower panel (110) and fully cover the top of the lower panel (110).

[0110] Additionally, a variable column (150) will be installed on the rear fixed frame (115) to support the upper panel (120) on the lower panel (110) by separating the thickness of the upper panel (120) from the insulation material (140). The variable column (150) is nested with the base column (151) and the movable column (154) to adjust the height of the base column (151) by moving the column (154) up and down.

[0111] At this time, a rotating fixing member (153) is formed between the base column member (151) and the movable column member (154). The movable column member (154) in the base column member (151) can be rotated according to a preset angle to fix it in the state of height adjustment, or to release the fixation so that its length can be variable.

[0112] The rotating fixing part (153) consists of a rear fixing groove (153b) formed in the vertical direction of one of the base support (151) and the movable support (154) to adjust the height, and formed in the other to insert the fixing protrusion (153a) into the circumferential direction of the movement during rotation.

[0113] A portion of the rear fixing groove (153b) is formed by connecting the upper and lower connecting grooves (153c) of multiple rear fixing grooves (153b) at the upper and lower positions. When the support column (154) is rotated on the base support column (151), the fixing protrusion (153a) is fixed to the height adjustment state through the rear fixing groove (153b), or the fixing protrusion (153a) is moved from the support column (153b) by moving the part corresponding to the upper and lower connecting groove (153c).

[0114] At this point, with the base support (151) extending the maximum height of the movable support (154), at least two or more fixed protrusions (153a) can be placed across the support fixing groove (153b) to increase the support force on the load applied to the upper panel (120).

[0115] In addition, at the bottom of the basic column member (151), a column disassembly part (152) is formed to fix the variable column (150) to the column fixing bracket (115) fixedly installed on the lower panel (110). The column disassembly part (152) is connected to the column disassembly groove (115) and the column disassembly part (152b) inside the fixing bracket (152a).

[0116] The detachment suspension part (152b) has a longer length in the longitudinal direction of the rear detachment groove (115a). When the rear detachment groove (115a) is inserted into the detachment suspension part (152b), the variable column (150) is rotated 90° so that the rear detachment part (152b) spans the lower part of the rear detachment groove (115a) and the variable column (150) is fixed on the fixing frame (115).

[0117] Each rear mounting bracket (115) can be fitted with multiple variable rear mounting brackets (150) at regular intervals.

[0118] On the upper part of the movable support member (154), a support rod joint (155) for mounting the support panel (125) can be formed. A support rod insertion groove (155a) is formed on the support rod joint (155) so that the panel support (125) can be inserted. A support rod (155b) connected to the support plate (155b) is formed in a direction perpendicular to the support rod insertion groove (155a).

[0119] The panel bracket (125) can be used to securely mount the upper panel (120) to cover the entire upper part of the roof.

[0120] According to the above-described embodiment of the present invention, the construction of a special roofing material (100) with adjustable height via variable columns is first performed by adjusting the length of the variable columns (150) according to the height at which the upper panel (120) is removed from the lower panel (110).

[0121] When adjusting the length of the variable plunger (150), the movable plunger (154) is rotated on the base plunger (151) so that the fixed protrusion (153a) of the base plunger (151) disengages from the plunger fixing groove (153b) of the movable plunger (154) and is positioned in the upper and lower connecting groove (153c).

[0122] If the movable pile member (154) rotates, the fixed protrusion (153a) is located in the upper and lower connecting grooves (153c) of the movable pile member (154), the movable pile member (154) will be released from fixation, and thus the movable pile member (154) slides up and down on the foundation pile member (151), moves the movable pile member (154) to the required height, and fixes the movable pile member (154) from the movable pile (154) to the opposite direction of the height adjustment.

[0123] When the movable support component (154) rotates, the fixed protrusion base (153a) of the base support component (151) enters the support fixing groove (153b) at a position corresponding to the height adjustment of the upper and lower connecting grooves (153c), and the height is fixed in the form that the fixed protrusion base (153a) spans the support fixing groove (153b).

[0124] If the length of the variable plunger (150) is adjusted, the variable plunger (150) is set at certain intervals within the plunger fixing rod (115). The variable plunger (150) aligns the length direction of the rear groove (115a) of the plunger fixing rod (115) with the length direction of the groove (152b) of the rear groove (152) with the length direction of the rear groove (115a). The variable plunger (115) is inserted into the plunger (115a), and the rear groove (115b) of the plunger (115°) is inserted into the variable plunger (115). 152b) Installation.

[0125] The embodiment describes adjusting the height of the variable plunger (150) first, and then installing it on the lower panel (110). However, the variable plunger (150) can also be fixedly installed on the lower panel (110), and then the height of the variable plunger (150) can be adjusted according to the height of the upper panel (120).

[0126] If all the variable struts (150) are installed on the lower panel (110), then the upper part of the lower panel (110) is fully covered with thermal insulation material (140).

[0127] After the insulation material (140) is installed on the upper part of the lower panel (110), the panel bracket (125) for installing the upper panel (120) is connected to the bracket joint (155) located at the top of the variable column (150). The upper part of the panel bracket (125) completely covers the roof of the upper panel (120), and the upper panel (120) is fixed on the panel bracket (125) to complete the construction.

[0128] Therefore, according to an embodiment of the present invention, the special roofing material (100) can be easily height-adjusted by variable columns. By supporting the upper panel (120) with variable columns (150) of variable length on the lower panel (110), the height of the upper panel (120) can be easily adjusted, thereby setting the special roofing material (100) to the required thickness for construction.

[0129] Furthermore, the present invention can shorten the construction period because the foundation column component (151) and the movable column component (154) that make up the variable column (150) are rotated from the foundation column component (151) to the movable column component (154) by a rotating fixing member (153), which facilitates the fixing and release of the fixed position.

[0130] Furthermore, the present invention can also increase the supporting force of the load applied to the upper panel (120) because the multiple fixing protrusions (153a) of the variable column (150) are fixed across each corresponding column fixing groove (153b).

[0131] Furthermore, the present invention can also facilitate the formation of equal spacing between multiple fixed protrusions (153a) of the variable plunger (150), thereby enabling rapid construction.

[0132] In addition, the present invention includes a plunger disassembly part (152) at the lower part of the variable plunger (150), and the variable plunger (150) is rotated on the plunger fixing bracket (115). By conveniently fixing the variable plunger (150) on the lower panel (110), construction can be carried out quickly.

[0133] In addition, the present invention also includes a bracket assembly (155) for connecting the panel bracket (125) on the upper part of the variable plunger (150) to which the upper panel (120) is mounted, so that the panel bracket (125) can be easily mounted on the variable plunger (150).

[0134] The embodiments of the present invention have been described above, but the scope of the present invention is not limited thereto, and includes all changes and modifications in the technical field to which the present invention pertains that are easily altered by a person with ordinary knowledge and are considered to be of equal scope.

Claims

1. A special roofing material, wherein the height can be adjusted by means of a variable column system including variable columns, wherein the special roofing material of the column system can be adjusted between the upper and lower panels, wherein, include: The above-mentioned variable column type; Foundation support components supported on the aforementioned lower panel; A movable column member that can slide up and down is installed on the base column member to support the movable column member of the upper panel and to adjust the height of the upper panel for the lower panel. In the base support member, when the movable column member rotates at the height of the up and down sliding movement, a special support material with variable support can be used to easily adjust the height, including a rotating fixing member that can fix the moving position or release the fixing.

2. The special roofing material according to claim 1, wherein, The aforementioned rotating fastener lacks the aforementioned base support and movable support. At any position, the movable support member will be preset in the sliding direction to form multiple equidistant fixed column grooves, and extend from another to fix the adjusted height across the column fixed groove at the adjusted position by rotating the movable support member on the base support member, or the height can be easily adjusted by a variable support including a fixed protrusion that disengages from the column fixed groove to release the fixation.

3. The special roofing material according to claim 2, wherein, The fixed protrusion is composed of a number of parts corresponding to the positions of the column fixing groove. When the fixed protrusion crosses the column fixing groove, at least two fixed protrusions cross the column fixing groove to improve the support force. The height can be adjusted by the variable column.

4. The special roofing material according to claim 2, wherein, The aforementioned column fixing groove is a variable column that allows for easy height adjustment by connecting the plurality of column fixing grooves to the sliding direction of the movable column component and including an upper and lower connecting groove that allows the fixed protrusion portion to move up and down away from the column fixing groove.

5. The special roofing material according to claim 1, wherein, The panel support includes multiple variable pillars connected to the aforementioned variable pillars to support the aforementioned upper panel. The variable pillars can be easily adjusted in height, and the support includes a support joint where the panel support is attached.

6. The special roofing material according to claim 1, wherein, The lower panel described above is a variable column with a column mounting bracket that includes the variable column type for fixed installation, which allows for easy height adjustment.

7. The special roofing material according to claim 6, wherein, The aforementioned support bracket includes a column disassembly groove formed along the length of the aforementioned support bracket. The aforementioned variable column is located at the lower part of the variable column. On the support bracket, depending on the rotation of the variable column, it can straddle the column disassembly groove or be released from suspension on the column disassembly groove. It includes a column disassembly part for disassembling and reassembling the variable column from the support bracket.

8. The special roofing material according to claim 1, wherein, The height can be adjusted via a variable column, including the thermal insulation material inserted between the upper panel and the lower panel.